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Heat transfer between a nano-tip and a surface

机译:纳米尖端与表面之间的热传递

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摘要

We study quasi-ballistic heat transfer through air between a hot nanometre-scale tip and a sample. The hot tip/surface configuration is widely used to perform non-intrusive confined heating. Using a Monte Carlo simulation, we find that the thermal conductance reaches 0.8 MW m~(-2) K~(-1) on the surface under the tip and show the shape of the heat flux density distribution (nanometre-scale thermal spot). These results show that a surface can be efficiently heated locally without contact. The temporal resolution of the heat transfer is a few tens of picoseconds.
机译:我们研究了在纳米级热尖端和样品之间通过空气的准弹道传热。热尖端/表面构造被广泛用于执行非侵入式受限加热。通过蒙特卡洛模拟,我们发现尖端下方表面的热导达到0.8 MW m〜(-2)K〜(-1)并显示出热通量密度分布的形状(纳米级的热斑) 。这些结果表明,表面可以被有效地局部加热而不接触。传热的时间分辨率为几十皮秒。

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